International audienceNucleotide degradation is a universal metabolic capability. Here we combine metabolomics, genetics and biochemistry to characterize the yeast pathway. Nutrient starvation, via PKA, AMPK/SNF1, and TOR, triggers autophagic breakdown of ribosomes into nucleotides. A protein not previously associated with nucleotide degradation, Phm8, converts nucleotide monophosphates into nucleosides. Downstream steps, which involve the purine nucleoside phosphorylase, Pnp1, and pyrimidine nucleoside hydrolase, Urh1, funnel ribose into the nonoxidative pentose phosphate pathway. During carbon starvation, the ribose-derived carbon accumulates as sedoheptulose-7-phosphate, whose consumption by transaldolase is impaired due to depletion of ...
AIMS: A shift in primary carbon metabolism is the fastest response to oxidative stress. Induced with...
The riboneogenesis pathway provides yeast with an alternate route for ribose production. Ribose is a...
Metabolic engineering focuses on rewriting the metabolism of cells to enhance native products or end...
International audienceNucleotide degradation is a universal metabolic capability. Here we combine me...
International audienceMetabolism is the best mapped major biochemical network. Nevertheless, even in...
This scoping review is aimed at the application of the metabolomics platform to dissect key metaboli...
International audienceRespiring Saccharomyces cerevisiae cells respond to a sudden increase in gluco...
The pentose phosphate pathway (PPP) is a route that can work in parallel to glycolysis in glucose de...
SummaryGlucose is catabolized in yeast via two fundamental routes, glycolysis and the oxidative pent...
Respiring Saccharomyces cerevisiae cells respond to a sudden increase in glucose concentration by a ...
<div><p><i>Saccharomyces cerevisiae</i> is calorie-restricted by lowering glucose from 2% to 0.5%. U...
Living organisms are constantly exposed to a variety of environmental and internal stressors tha tar...
Pyrimidines are important precursors for nucleic acids, and constantly synthesized and degraded in t...
We are interested in broadening the substrate utilisation range of the yeast Saccharomyces cerevisia...
ABSTRACT Glycolysis is central to energy metabolism in most organisms and is highly regulated to ena...
AIMS: A shift in primary carbon metabolism is the fastest response to oxidative stress. Induced with...
The riboneogenesis pathway provides yeast with an alternate route for ribose production. Ribose is a...
Metabolic engineering focuses on rewriting the metabolism of cells to enhance native products or end...
International audienceNucleotide degradation is a universal metabolic capability. Here we combine me...
International audienceMetabolism is the best mapped major biochemical network. Nevertheless, even in...
This scoping review is aimed at the application of the metabolomics platform to dissect key metaboli...
International audienceRespiring Saccharomyces cerevisiae cells respond to a sudden increase in gluco...
The pentose phosphate pathway (PPP) is a route that can work in parallel to glycolysis in glucose de...
SummaryGlucose is catabolized in yeast via two fundamental routes, glycolysis and the oxidative pent...
Respiring Saccharomyces cerevisiae cells respond to a sudden increase in glucose concentration by a ...
<div><p><i>Saccharomyces cerevisiae</i> is calorie-restricted by lowering glucose from 2% to 0.5%. U...
Living organisms are constantly exposed to a variety of environmental and internal stressors tha tar...
Pyrimidines are important precursors for nucleic acids, and constantly synthesized and degraded in t...
We are interested in broadening the substrate utilisation range of the yeast Saccharomyces cerevisia...
ABSTRACT Glycolysis is central to energy metabolism in most organisms and is highly regulated to ena...
AIMS: A shift in primary carbon metabolism is the fastest response to oxidative stress. Induced with...
The riboneogenesis pathway provides yeast with an alternate route for ribose production. Ribose is a...
Metabolic engineering focuses on rewriting the metabolism of cells to enhance native products or end...